Pinus densiflora var. zhangwuensis grows fast, and its drought and salinity resistance are better than Pinus sylvestris var. mongolica. We compared cold hardiness and mechanisms of cold hardiness between the two speci...Pinus densiflora var. zhangwuensis grows fast, and its drought and salinity resistance are better than Pinus sylvestris var. mongolica. We compared cold hardiness and mechanisms of cold hardiness between the two species, to provide a theoretical basis for promoting and applying P. densiflora var. zhangwuensis in cold regions. A cold stress experiment was carried out on 3-year-old plantlets of P. densiflora var. zhangwuensis and P. sylvestris var. mon- golica after hardening at five temperature regimes, 5, -10, -20, -40, and -60 ℃, respectively. Some indices of needle samples for both species were measured, such as relative conductivity (REL), maximum photochemical efficiency (Fv/Fm), malondialdehyde (MDA), catalase (CAT), proline (Pro), soluble sugar (SS), and stomata density. REL and MDA values of both species after hard- ening had the same trend of increasing, but the trend was opposite in Fv/Fm value with increasing cold stress. Com- pared with P. sylvestris var. mongolica, the P. densiflora var. zhangwuensis had smaller increases in REL and MDA, and a smaller decline in Fv/Fm during cold stress. Com- pared to the control, REL growth of P. densiflora var. zhangwuensis and P. sylvestris var. mongolica at -60 ℃were 0.41 and 0.60, and MDA growth was 29.94 mol g-1 FW and 47.80 mol g-1 FW, and Fv/Fm declines were 0.08 and 0.27. Half-lethal temperatures (LT50) calculated by logistic equation for P. densiflora var. zhangwuensis and P. sylvestris var. mongolica were -58.23 and -50.34 ℃, respectively. These data suggest that cold resistance of P. densiflora var. zhangwuensis is stronger than that of P. sylvestris var. mongolica. Cold-resistance mechanisms of the two species differed. In response to cold stress, P. sylvestris var. mongolica had strong osmotic adjustment ability because of higher Pro and SS content, while P. densiflora var. zhangwuensis had strong antioxidant ability due to stronger CAT activity. Stomata density and diameter of P. densiflora var. zhangwuensis were smalle展开更多
为探究黄花鸢尾(Iris pseudoacorus)在滨海区的耐盐碱程度及对盐碱污染水体中氮磷的去除能力,采用水培实验,分析其幼苗在盐碱交互胁迫下的生长状况、生理响应及其对水体中氮磷的去除效果.结果表明,黄花鸢尾耐盐碱范围:p H值为7、8、9...为探究黄花鸢尾(Iris pseudoacorus)在滨海区的耐盐碱程度及对盐碱污染水体中氮磷的去除能力,采用水培实验,分析其幼苗在盐碱交互胁迫下的生长状况、生理响应及其对水体中氮磷的去除效果.结果表明,黄花鸢尾耐盐碱范围:p H值为7、8、9时,盐度分别低于9‰、6‰、3‰.在其耐盐碱范围内,植株的含水量和叶绿素含量与对照相差在5.0%以内,而Na+、Cl-与甜菜碱、可溶性糖含量随盐度和p H值的升高而增加,但增幅均低于130.0%.在低盐弱碱(p H 7、盐度为3‰、6‰与p H 8、盐度为3‰)条件下,黄花鸢尾幼苗相对生长速率比对照高0.6~6.1%,对水体中总氮、总磷的最大去除率分别为0.046mg/(g?d)、0.020mg/(g?d).在其耐盐碱范围外,Na+与脯氨酸含量与对照相比增幅高达14.0倍和91.4倍;黄花鸢尾生长受阻,对水体中氮磷的去除效果较差.因此,黄花鸢尾仅适用于滨海低盐弱碱水体的生态修复.展开更多
基金supported by the National Forestry Public Welfare Industry Research Project(201004023)Liaoning Agricultural Science and Technology Key Project(2011207002 and2011207004)
文摘Pinus densiflora var. zhangwuensis grows fast, and its drought and salinity resistance are better than Pinus sylvestris var. mongolica. We compared cold hardiness and mechanisms of cold hardiness between the two species, to provide a theoretical basis for promoting and applying P. densiflora var. zhangwuensis in cold regions. A cold stress experiment was carried out on 3-year-old plantlets of P. densiflora var. zhangwuensis and P. sylvestris var. mon- golica after hardening at five temperature regimes, 5, -10, -20, -40, and -60 ℃, respectively. Some indices of needle samples for both species were measured, such as relative conductivity (REL), maximum photochemical efficiency (Fv/Fm), malondialdehyde (MDA), catalase (CAT), proline (Pro), soluble sugar (SS), and stomata density. REL and MDA values of both species after hard- ening had the same trend of increasing, but the trend was opposite in Fv/Fm value with increasing cold stress. Com- pared with P. sylvestris var. mongolica, the P. densiflora var. zhangwuensis had smaller increases in REL and MDA, and a smaller decline in Fv/Fm during cold stress. Com- pared to the control, REL growth of P. densiflora var. zhangwuensis and P. sylvestris var. mongolica at -60 ℃were 0.41 and 0.60, and MDA growth was 29.94 mol g-1 FW and 47.80 mol g-1 FW, and Fv/Fm declines were 0.08 and 0.27. Half-lethal temperatures (LT50) calculated by logistic equation for P. densiflora var. zhangwuensis and P. sylvestris var. mongolica were -58.23 and -50.34 ℃, respectively. These data suggest that cold resistance of P. densiflora var. zhangwuensis is stronger than that of P. sylvestris var. mongolica. Cold-resistance mechanisms of the two species differed. In response to cold stress, P. sylvestris var. mongolica had strong osmotic adjustment ability because of higher Pro and SS content, while P. densiflora var. zhangwuensis had strong antioxidant ability due to stronger CAT activity. Stomata density and diameter of P. densiflora var. zhangwuensis were smalle
文摘为探究黄花鸢尾(Iris pseudoacorus)在滨海区的耐盐碱程度及对盐碱污染水体中氮磷的去除能力,采用水培实验,分析其幼苗在盐碱交互胁迫下的生长状况、生理响应及其对水体中氮磷的去除效果.结果表明,黄花鸢尾耐盐碱范围:p H值为7、8、9时,盐度分别低于9‰、6‰、3‰.在其耐盐碱范围内,植株的含水量和叶绿素含量与对照相差在5.0%以内,而Na+、Cl-与甜菜碱、可溶性糖含量随盐度和p H值的升高而增加,但增幅均低于130.0%.在低盐弱碱(p H 7、盐度为3‰、6‰与p H 8、盐度为3‰)条件下,黄花鸢尾幼苗相对生长速率比对照高0.6~6.1%,对水体中总氮、总磷的最大去除率分别为0.046mg/(g?d)、0.020mg/(g?d).在其耐盐碱范围外,Na+与脯氨酸含量与对照相比增幅高达14.0倍和91.4倍;黄花鸢尾生长受阻,对水体中氮磷的去除效果较差.因此,黄花鸢尾仅适用于滨海低盐弱碱水体的生态修复.